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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Computation of electron impact scattering studies on benzene
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Computation of electron impact scattering studies on benzene

机译:苯的电子冲击散射研究

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摘要

An elaborate theoretical study of electron scattering with benzene over a broad impact energy range is reported in this article. Integrated cross sections such as the electronic excitation cross section, momentum transfer cross section, ionization cross section and the total collision cross section along with the differential elastic cross section are computed at low energy (0.01-20 eV) using ab initio R-matrix employing Quantemol-N. Beyond ionization threshold, the calculations are also carried out using spherical complex optical potential (SCOP) formalism up to 5000 eV. A smooth crossover of the total cross section data is obtained through the two formalisms at the incident energy equal to 13 eV and hence we are able to study the cross sections over a wide energy range. The scattering rate coefficients using the computed elastic cross sections for this target are reported for the first time.
机译:本文报道了在宽冲击能量范围内用苯的电子散射的精心理论研究。 诸如电子励磁横截面,动量传递横截面,电离截面和总碰撞横截面以及使用AB Initio R-Matrix的低能量(0.01-20eV)计算的集成横截面和总碰撞横截面 quantemol-n。 除电离阈值之外,还使用球形复合光学电位(SCOP)形式,高达5000eV的计算。 通过等于13eV的入射能量的两个形式主义获得总横截面数据的平滑交叉,因此我们能够在宽的能量范围内研究横截面。 第一次报告使用该目标的计算弹性横截面的散射速率系数。

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